Zheng Chaofan, Wu Qu, Hu Xiaojing, Ma Jingxuan, Sun Kuiyuan, Sun Yongjun, Xu Bincheng
College of Urban Construction, Nanjing Tech University, Nanjing, 211816, China.
College of Urban Construction, Nanjing Tech University, Nanjing, 211816, China.
Environ Res. 2024 Apr 1;246:118564. doi: 10.1016/j.envres.2024.118564. Epub 2024 Feb 27.
Metal-organic frameworks (MOFs) have shown great prospects in wastewater remediation. However, the easy aggregation, difficult separation and inferior reusability greatly limit their large-scale application. Herein, we proposed a facile, green and low-cost strategy to construct robust and stable MOF-based hydrogel beads (Fe-BTC-HBs) in a gram scale, and employed them to remove antibiotics from wastewater. As a result, the Fe-BTC-HBs demonstrated outstanding adsorption capacity for both ofloxacin (OFL) and tetracycline (TC) (281.17 mg/g for OFL and 223.60 mg/g for TC) under a near-neutral environment. The main adsorption mechanisms of OFL and TC were hydrogen bonding and π-π stacking interaction. Owing to its macroscopic granule and stable structure, Fe-BTC-HBs can be separated rapidly from wastewater after capturing antibiotics, and more than 85% adsorption capacity still remained after six cycles, while the powdered Fe-BTC only showed less than 6% recovery efficiency with massive weight loss (around 92%). In real industrial effluent, the adsorption performance of Fe-BTC-HBs toward two antibiotics exhibited negligible decreases (2.9% for OFL and 2.2% for TC) compared with that in corresponding solutions. Furthermore, Fe-BTC-HBs also had appealing economic and environmental benefit. Overall, the macro-manufactured MOF beads have the promising potential for the large-scale wastewater treatment.
金属有机框架材料(MOFs)在废水处理方面展现出了巨大的前景。然而,其易于聚集、分离困难以及可重复使用性较差等问题极大地限制了它们的大规模应用。在此,我们提出了一种简便、绿色且低成本的策略,以克级规模构建坚固且稳定的基于MOF的水凝胶珠(Fe-BTC-HBs),并将其用于去除废水中的抗生素。结果表明,Fe-BTC-HBs在近中性环境下对氧氟沙星(OFL)和四环素(TC)均表现出出色的吸附能力(对OFL为281.17 mg/g,对TC为223.60 mg/g)。OFL和TC的主要吸附机制为氢键和π-π堆积相互作用。由于其宏观颗粒和稳定的结构,Fe-BTC-HBs在捕获抗生素后可迅速从废水中分离出来,经过六个循环后仍保留超过85%的吸附容量,而粉末状的Fe-BTC仅表现出不到6%的回收效率且伴有大量质量损失(约92%)。在实际工业废水中,Fe-BTC-HBs对两种抗生素的吸附性能与相应溶液相比下降可忽略不计(对OFL为2.9%,对TC为2.2%)。此外,Fe-BTC-HBs还具有可观的经济和环境效益。总体而言,这种宏观制备的MOF珠在大规模废水处理方面具有广阔的应用潜力。